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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >The giardial ENTH protein participates in lysosomal protein trafficking and endocytosis
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The giardial ENTH protein participates in lysosomal protein trafficking and endocytosis

机译:贾第虫ENTH蛋白参与溶酶体蛋白的运输和内吞作用

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In the protozoa parasite Giardia lamblia, endocytosis and lysosomal protein trafficking are vital parasite-specific processes that involve the action of the adaptor complexes AP-1 and AP-2 and clathrin. In this work, we have identified a single gene in Giardia encoding a protein containing an ENTH domain that defines monomeric adaptor proteins of the epsin family. This domain is present in the epsin or epsin-related (epsinR) adaptor proteins, which are implicated in endocytosis and Golgi-to-endosome protein trafficking, respectively, in other eukaryotic cells. We found that GlENTHp (for G. lamblia ENTH protein) localized in the cytosol, strongly interacted with PI3,4,5P(3), was associated with the alpha subunit of AP-2, clathrin and ubiquitin and was involved in receptor-mediated endocytosis. It also bonded PI4P, the gamma subunit of AP-1 and was implicated in ER-to-PV trafficking. Alteration of the GlENTHp function severely affected trophozoite growth showing an unusual accumulation of dense material in the lysosome-like peripheral vacuoles (PVs), indicating that GlENTHp might be implicated in the maintenance of PV homeostasis. In this study, we showed evidence suggesting that GlENTHp might function as a monomeric adaptor protein supporting the findings of other group indicating that GlENTHp might be placed at the beginning of the ENTH family. (C) 2015 Elsevier B.V. All rights reserved.
机译:在原生动物寄生虫贾第鞭毛虫中,胞吞作用和溶酶体蛋白运输是至关重要的寄生虫特异性过程,涉及衔接子复合物AP-1和AP-2和网格蛋白的作用。在这项工作中,我们已经鉴定出贾第鞭毛虫中的一个单一基因,该基因编码包含ENTH域的蛋白质,该蛋白质定义了epsin家族的单体衔接子蛋白质。此域存在于epsin或epsin相关(epsinR)衔接子蛋白中,它们分别与其他真核细胞的内吞作用和高尔基体到内体的蛋白质运输有关。我们发现,GlENTHp(针对G. lamblia ENTH蛋白)位于细胞质中,与PI3,4,5P(3)强烈相互作用,与AP-2,网格蛋白和泛素的α亚基相关,并参与受体介导内吞作用。它也与PI-1结合,PI4P是AP-1的γ亚基,与ER到PV的交易有关。 GlENTHp功能的改变严重影响了滋养体的生长,表明在溶酶体样外周液泡(PVs)中异常密集的物质积累,表明GlENTHp可能与维持PV稳态有关。在这项研究中,我们显示了证据表明GlENTHp可能充当单体衔接蛋白,支持其他研究组的研究结果,表明GlENTHp可能位于ENTH家族的开始。 (C)2015 Elsevier B.V.保留所有权利。

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